IP Library Granted Patent US 12,114,644
Granted Patent B2
US 12,114,644 · App. 17/680,125 · Granted Oct 15, 2024

Feed consumption monitoring system

Inventor: Thue Holm (Vejle, DK)
A01K61/80G01N15/1434H04N7/183H04N23/54H04N23/56
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Quick Facts
Patent No.
US 12,114,644
App. No.
17/680,125
Granted
Oct 15, 2024
Kind
B2
Abstract

A feed consumption monitoring system for monitoring and controlling the quantity of feed introduced to an aquaculture environment. The system includes utilization of a high contrast surface, which receives a supply of running water containing a quantity of feed particles, a camera assembly to capture images of the high contrast surface upon its contact with the supply of running water, and a mount assembly to support the foregoing components, and the system may also include a lighting assembly to illuminate the high contrast surface as well as a software component to analyze such images to determine whether the quantity of feed in the supply of running water is suboptimal.

Claims (30)

1. A feed consumption monitoring system comprising:

a high contrast surface structured to receive a supply of running water, the supply of running water containing a quantity of feed particles;

a camera assembly structured to capture at least one image of said high contrast surface; and

a mount assembly structured to removably retain said camera assembly.

2. The feed consumption monitoring system of claim 1 , wherein a lighting assembly is disposed in an illuminating relation to said high contrast surface.

3. The feed consumption monitoring system of claim 2 , wherein said lighting assembly comprises a part of and is operative through said camera assembly.

4. The feed consumption monitoring system of claim 1 , wherein said camera assembly is disposed in vertical relation to said high contrast surface.

5. The feed consumption monitoring system of claim 1 , wherein said high contrast surface is removably retained by said mount assembly.

6. The feed consumption monitoring system of claim 1 , wherein said mount assembly is disposed in removable relation to said high contrast surface.

7. The feed consumption monitoring system of claim 1 , further comprising a flow system; said flow system comprising a conduit defining a path of fluid flow for the supply of running water; said conduit being vertically oriented and disposed to direct the supply of running water into engaging relation with said high contrast surface.

8. The feed consumption monitoring system of claim 1 , further comprising a filtration system; said filtration system structured to filter feed particles disposed upstream of said high contrast surface and in receiving relation to the supply of running water.

9. The feed consumption monitoring system of claim 1 , wherein said camera assembly is positioned and configured to capture at least one image of said high contrast surface upon engagement between said high contrast surface and the supply of running water containing the quantity of feed particles.

10. The feed consumption monitoring system of claim 9 , wherein said camera assembly is operative through a software component, said software component structured to command said camera assembly to execute said at least one image of said high contrast surface.

11. The feed consumption monitoring system of claim 9 , wherein said at least one image captured by said camera assembly is transmitted to said software component.

12. The feed consumption monitoring system of claim 11 , wherein said software component is configured to monitor the departure of the quantity of feed particles from the field of view of said camera assembly.

13. The feed consumption monitoring system of claim 11 , wherein said software component is configured to analyze said at least one image; said analysis determinative of the quantity of feed particles in the supply of running water delivered to said high contrast surface.

14. The feed consumption monitoring system of claim 13 , wherein said software component is configured to receive said at least one image captured by said camera assembly and said analysis is further determinative of a suboptimal quantity of feed particles in the supply of running water.

15. The feed consumption monitoring system of claim 14 further comprising a feed delivery system disposed in communicating relation with a recirculating aquaculture system (RAS) environment, said software component interactive with said feed delivery system.

16. The feed consumption monitoring system of claim 14 , wherein said software component is configured to alter a feed delivery quantity to the environment by notifying the feed delivery system upon detecting a suboptimal quantity of feed particles in the supply of running water.

17. The feed consumption monitoring system of claim 16 , wherein the feed delivery system is an automated mechanism disposed in feed delivering relation to the environment.

18. A feed consumption monitoring system comprising:

a high contrast surface structured to receive a supply of running water, the supply of running water containing a quantity of feed particles;

a camera assembly structured to capture at least one image of said high contrast surface;

a mount assembly structured to removably retain said camera assembly; and

a software component configured to analyze said at least one image, said analysis determinative of the quantity of feed particles in the supply of running water delivered to said high contrast surface.

19. The feed consumption monitoring system of claim 18 wherein a lighting assembly is disposed in an illuminating relation to said high contrast surface.

20. The feed consumption monitoring system of claim 19 wherein said lighting assembly comprises a part of and is operative through said camera assembly.

21. The feed consumption monitoring system of claim 18 wherein said analysis is determinative of a suboptimal quantity of feed particles in the supply of running water.

22. The feed consumption monitoring system of claim 18 further comprising a feed delivery system disposed in communicating relation with an environment, said software component interactive with said feed delivery system.

23. The feed consumption monitoring system of claim 22 wherein said software component is configured to alter a feed delivery quantity to the environment by notifying the feed delivery system upon detecting a suboptimal quantity of feed particles in the supply of running water.

Assignments (2)
SECURITY INTEREST AND CONTINUING LIEN Recorded Apr 11, 2022
From: ATLANTIC SAPPHIRE IP, LLC; ATLANTIC SAPPHIRE ASA
To: DNB BANK ASA, NEW YORK BRANCH, IN ITS CAPACITY AS COLLATERAL AGENT FOR THE SECURED PARTIES
Reel/Frame 059659/0929 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2022
From: HOLM, THUE
To: ATLANTIC SAPPHIRE IP, LLC
Reel/Frame 059446/0114 →
Continuity (3)
Provisional Application 63187126 · May 11, 2021
Provisional Application 63154274 · Feb 26, 2021
Related Publication 20220272952A1 · Sep 1, 2022
Cited By (2)
US 12,268,185 US 12,302,856